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Dioxaborines as organic n-semiconductors, process for the production of semiconductors utilizing dioxaborines, and semiconductor component, field effect transistor, and diode having a dioxaborine
Dioxaborines as organic n-semiconductors, process for the production of semiconductors utilizing dioxaborines, and semiconductor component, field effect transistor, and diode having a dioxaborine
Dioxaborines as organic n-semiconductors, a process for the production of semiconductors utilizing dioxaborines, and a semiconductor component, a field effect transistor, and a diode having a dioxaborine are provided. Dioxaborines have a conjugated π-system that carries two terminal six-membered dioxaborine heterocycles that are electronically linked to one another via the central π-system. The compounds have good electron mobility and very good reversibility of redox behavior and are therefore suitable as organic semiconductors in electronic semiconductor components. Processes for manufacturing the electronic semiconductor components utilize the dioxabroines.
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